EPM570ZM256C6N Altera, EPM570ZM256C6N Datasheet - Page 22

IC MAX IIZ CPLD 570 LE 256-MBGA

EPM570ZM256C6N

Manufacturer Part Number
EPM570ZM256C6N
Description
IC MAX IIZ CPLD 570 LE 256-MBGA
Manufacturer
Altera
Series
MAX® IIr
Datasheets

Specifications of EPM570ZM256C6N

Programmable Type
In System Programmable
Delay Time Tpd(1) Max
9.0ns
Voltage Supply - Internal
1.71 V ~ 1.89 V
Number Of Logic Elements/blocks
570
Number Of Macrocells
440
Number Of I /o
160
Operating Temperature
0°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
256-MBGA
Voltage
1.8V
Memory Type
FLASH
Number Of Logic Elements/cells
570
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Other names
544-2453

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Price
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EPM570ZM256C6N
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ALTERA
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EPM570ZM256C6N
Manufacturer:
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2–14
MAX II Device Handbook
functions from LE 1 to LE 10 in the same LAB. The register chain connection allows
the register output of one LE to connect directly to the register input of the next LE in
the LAB for fast shift registers. The Quartus II Compiler automatically takes
advantage of these resources to improve utilization and performance.
shows the LUT chain and register chain interconnects.
Figure 2–11. LUT Chain and Register Chain Interconnects
The C4 interconnects span four LABs up or down from a source LAB. Every LAB has
its own set of C4 interconnects to drive either up or down.
interconnect connections from an LAB in a column. The C4 interconnects can drive
and be driven by column and row IOEs. For LAB interconnection, a primary LAB or
its vertical LAB neighbor can drive a given C4 interconnect. C4 interconnects can
drive each other to extend their range as well as drive row interconnects for column-
to-column connections.
Interconnect
Adjacent LE
Routing to
LUT Chain
Local
Local Interconnect
Routing Among LEs
in the LAB
LE6
LE0
LE1
LE2
LE3
LE4
LE5
LE7
LE8
LE9
Register Chain
Routing to Adjacent
LE's Register Input
Figure 2–12
© October 2008 Altera Corporation
Chapter 2: MAX II Architecture
MultiTrack Interconnect
Figure 2–11
shows the C4

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